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Course Outline

Introduction to V2X Communication

  • The role of V2X in the context of autonomous vehicles
  • Primary advantages of V2X in enhancing traffic safety and efficiency
  • Regulatory frameworks and global trends in V2X adoption

V2X Interaction Models

  • Vehicle-to-Vehicle (V2V) exchanges
  • Vehicle-to-Infrastructure (V2I) connectivity
  • Vehicle-to-Pedestrian (V2P) and Vehicle-to-Network (V2N) interactions

V2X Technological Frameworks

  • Dedicated Short-Range Communications (DSRC)
  • Cellular V2X (C-V2X) and 5G-V2X integrations
  • A comparative analysis of DSRC versus C-V2X for autonomous driving

Network Architecture and Protocols

  • Components and structure of V2X network architectures
  • Utilization of IEEE 80211p and LTE/5G in V2X contexts
  • Message structures: CAM, DENM, and BSM

V2X Security and Privacy Protocols

  • Cybersecurity risks specific to V2X networks
  • Managing data privacy and identity verification
  • Application of cryptographic methods for secure V2X transmission

V2X Simulation and Validation

  • Overview of simulation platforms such as SUMO and OMNeT++
  • Modeling V2X scenarios to improve traffic safety
  • Testing V2X applications in real-world settings

Emerging Trends in V2X

  • The fusion of AI with V2X networks
  • Edge computing and cloud-centric V2X architectures
  • Future connectivity standards for fully autonomous driving

Conclusion and Forward Path

Requirements

  • Foundational knowledge of networking protocols
  • Working familiarity with IoT communication standards
  • Practical experience with programming languages like Python or MATLAB

Target Audience

  • Network engineers specializing in automotive communication systems
  • Automotive IoT developers constructing connected vehicle solutions
  • Researchers in autonomous vehicles with a focus on V2X technologies
 21 Hours

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